首页> 外文会议>Electronic Components and Technology Conference (ECTC), 2012 IEEE 62nd >A new approach towards an optimum design and manufacture of microfluidic devices based on ex situ fabricated hydrogel based thin films' integration
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A new approach towards an optimum design and manufacture of microfluidic devices based on ex situ fabricated hydrogel based thin films' integration

机译:基于异位制造的水凝胶基薄膜集成的微流控装置优化设计和制造的新方法

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We present a compression based packaging technique which can be applied to reversibly seal hydrogel based materials'' thin films and micro-fabricated thermoplastic components for hybrid materials stacking microfluidic cells-based chips design. A multilayer microdevice has been realized for liquid leakage tests at the thermoplastic/hydrogel interface nearby the fluidic circuits machined on the plastic layer; biocompatible Poly-hydroxyethylmethacrylate (PHEMA) hydrogel membranes with different thickness (Ranging from 100 to 200 μm) and micro-milled Polymethylmethacrylate components were chosen to realize the chip. By promoting continuous perfusion of the system pumping aqueous coloured dye solutions in the microchannels, the sealing between the two materials resulted guaranteed for tested flow rate values, ranging from 100nL/min to 10mL/min. Furthermore, to take the hydrogel into operation, a representative case study of a micro-bioreactor based on joint hybrid materials and employing PHEMA thin film as a cell culture substrate has been analyzed and modelled by mean of numerical simulation.
机译:我们提出了一种基于压缩的包装技术,该技术可用于可逆密封基于水凝胶的材料的薄膜和微制造的热塑性部件,用于基于微流体细胞的芯片设计的混合材料堆叠。已经实现了用于在塑料层上加工的流体回路附近的热塑性塑料/水凝胶界面处进行液体泄漏测试的多层微型设备;选择具有不同厚度(范围为100至200μm)的生物相容性聚甲基丙烯酸甲酯(PHEMA)水凝胶膜和微研磨的聚甲基丙烯酸甲酯组件来实现该芯片。通过促进在微通道中泵送有色染料水溶液的系统的连续灌注,保证了两种材料之间的密封性,保证了所测试的流速范围从100nL / min到10mL / min。此外,为使水凝胶投入运行,通过数值模拟对基于联合杂化材料并使用PHEMA薄膜作为细胞培养基质的微生物反应器的代表性案例进行了分析和建模。

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